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POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using...

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POWER TRANSMISSION SYSTEMS
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Page 1: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

POWER TRANSMISSION SYSTEMS

Page 2: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

• Mechanical power can be transmitted from one shaft to another by using four methods– Belt drive– Rope drive– Chain drive– Gear drive

• The shaft from which power is transmitted is called driver shaft and the shaft to which power is transmitted is called driven shaft

Page 3: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

BELT DRIVE1. A belt is a looped strip of flexible material, used to

mechanically link two or more rotating shafts.

2. They may be used as a source of motion, to efficiently transmit power, or to track relative movement. Belts are looped over pulleys.

3. In a two pulley system, the belt can either drive the pulleys in the same direction, or the belt may be crossed, so that the direction of the shafts is opposite.

Page 4: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

TYPES OF BELTS

Page 5: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

OPEN BELT DRIVE

Page 6: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

• It is used with shafts arranged in parallel and to be rotated in same direction.

• The driver pulley pulls the belt from one side and delivers the same to the other side.

• Side where tension is more is called tight side and the other side is called slack side

Page 7: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

CROSS BELT DRIVE

Page 8: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

• It used with shafts arranged in parallel and to be rotated in opposite direction.

• At the point where belts crosses, it rubs against itself and wears.

• Shafts are placed at a minimum distance of 20b to minimize the wear.

Page 9: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

Length of belt

Page 10: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

CHAIN DRIVE

• It consists of an endless chain running over toothed wheel. Toothed wheel is called sprocket.

Page 11: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.
Page 12: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.
Page 13: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

• The smaller sprocket is called pinion and the bigger one is called wheel.

Page 14: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

• Based on application we can classify chains as

1) Power transmission chains

2) Pulling chainsUsed in elevators

3) Hoisting chains Used in lifting loads

CLASSIFICATION OF CHAINS

Page 15: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

TYPES OF POWER TRANSMITTING CHAINS

1. ROLLER CHAIN

2. SILENT OR INVERTED TOOTH CHAIN

Page 16: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

1 Outer plate 2 Inner plate 3 Pin4 Bushing 5 Roller

Page 17: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

ROLLER CHAIN

• It consists of rollers, bushes, pins, inner plates and outer plates.

• The pin passes centrally through the bush and the roller surrounds the bush.

• The bush moves freely on the roller and the roller moves freely on the bush.

Page 18: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

• Bushes are held together by outer plates.

• Rollers are held together by inner plates.

• To prevent the lateral movement of the outer plates the pin ends are hammered in the shape of a rivet head.

Page 19: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

Inverted tooth chain

• It is employed when heavier loads are to be transmitted and maximum quietness is desired

Page 20: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

GEAR DRIVE

Page 21: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

• Gear is a term used to generally denote toothed wheels.

• For transmitting power one gear will be mounted on driving shaft and the other will be mounted on driven shaft.

• The teeth's of the gears will be meshed with each other

• The distance between the shafts must be sufficient to enable meshing of the gear tooth.

Page 22: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

Gear materials

• For heavy duty – cast steel and alloy steel

• For corrosive environment – Non ferrous materials (phosphor bronze, nickel, manganese)

• The cheapest material – Grey iron

Page 23: POWER TRANSMISSION SYSTEMS. Mechanical power can be transmitted from one shaft to another by using four methods – Belt drive – Rope drive – Chain drive.

SPUR GEARIn this the teeth will be cut parallel to the shaft

Used to transmit power between parallel shafts


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